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[23]Enbo Shangguan*, Peiying Fu, Sashuang Ning, Chengke Wu, Jing Li*, Xiaowu Cai, Zhenhui Wang, Mingyu Wang, Xiaoguang Li, QuanminLi, ZnAl-layered double hydroxide nanosheets-coated ZnO@C microspheres with improved cycling performance as advanced anode materials for zinc-based rechargeable batteries, Journal of Power Sources 422 (2019) 145–155.(SCI一区TOP, IF:6.945)
[22]Enbo Shangguan*, Shuqian Fu , Chengke Wu , Xiaowu Cai , Jing Li*, Zhaorong Chang , Zhenhui Wang , Quanmin Li, Sublimed sulfur powders as novel effective anode additives to enhance the high-rate capabilities of iron anodes for advanced iron based secondary batteries. Electrochimica Acta 301 (2019) 162-173. (SCI一区TOP, IF:5.116)
[21] Enbo Shangguan,*, Qin Wang, Chengke Wu, Siqi Wu, Mengting Ji, Jing Li,* Zhaorong Chang, Quanmin Li, Novel Application of Repaired LiFePO4 as a Candidate Anode Material for Advanced Alkaline Rechargeable Batteries. ACS Sustainable Chem. Eng. 6(2018)13312−13323. (SCI二区TOP, IF:6.140)
[20] Enbo Shangguan*, Shuqian Fu, Siqi Wu, Qin Wang, Chengke Wu, Jing Li*, Xiaowu Cai, Zhaorong Chang, Zhenhui Wang, Quanmin Li, Kai Jiang*, Evolution of spent LiFePO4 powders into LiFePO4/C/FeS composites: A facile and smart approach to make sustainable anodes for alkaline Ni-Fe secondary batteries. Journal of Power Sources 403 (2018) 38–48.(SCI一区TOP, IF:6.945)
[19]Jing Li, Litan Guo, Enbo Shangguan*, Mingzhu Yue, Min Xu, Dong Wang, Zhaorong Chang, Quanmin Li. Synthesis of novel spherical Fe3O4@Ni3S2 composite as improved anode material for rechargeable nickel-iron batteries. Electrochimica Acta. 240(2017)256-265.(SCI一区TOP, IF:5.116)
[18] Jing Li, Tonghui Zhao, Enbo Shangguan, Yao Li, Linqian Li, Mingyu Wang, Zhaorong Chang, Quanmin Li. Enhancing the rate and cycling performance of spherical ZnO anode material for advanced zinc-nickel secondary batteries by combined in-situ doping and coating with carbon. Electrochimica Acta. 236(2017)180-189.(SCI一区TOP, IF:5.116)
[17] Xiaoya Liu, Enbo Shangguan*, Jing Li, Sashuang Ning, Litan Guo, Quanmin Li*, A novel electrochemical sensor based on FeS anchored reduced graphene oxide nanosheets for simultaneous determination of dopamine and acetaminophen.Materials Science and Engineering: C, 70 (2017) 628–636.(SCI二区TOP, IF:5.080)
[16] Enbo Shangguan*, Litan Guo; Fei Li; Qin Wang; Jing Li*; Quanmin Li; Zhaorong Chang; Xiao-Zi Yuan. FeS anchored reduced graphene oxide nanosheets as advanced anode material with superior high-rate performance for alkaline secondary batteries.J. Power Sources. 327 (2016)187-195.(SCI一区TOP, IF:6.945)
[15] Jing Li, Enbo Shangguan*, Dan Guo, Fengli Gao, Quanmin Li*, Xiao-Zi Yuan, HaijiangWang. Influence of acidity and auxiliary electrode reaction on the oxidation of epinephrine on the pre-anodized carbon paste electrode. Electrochimica Acta, 186 (2015)209-215(SCI一区TOP, IF:5.116)
[14] E.B. Shangguan*, F. Li, J. Li, Z.R. Chang, Q.M. Li*, X.Z. Yuan, H.J.Wang. FeS/C composite as high-performance anode material for alkaline Nickel-iron rechargeable batteries. J. Power Sources. 291 (2015)29-39. (SCI一区TOP, IF:6.945)
[13] E.B.Shangguan*, J. Li, D. Guo, L.T. Guo, M.Z. Nie, Z.R.Chang, X.Z. Yuan, H.J. Wang. A comparative study of structural and electrochemical properties of high-density aluminum substituted a-nickel hydroxide containing different interlayer anions. J. Power Sources. 282 (2015) 158-168.(SCI一区TOP, IF:6.945)
[12] T.H. Zhao, Enbo Shangguan*, Y. Li, J. Li*, Z.R. Chang, Q.M. Li, X.Z. Yuan, H.J. Wang. Facile synthesis of high tap density ZnO microspheres as advanced anode material for alkaline nickel-zinc rechargeable batteries. Electrochimica Acta, 182 (2015)173-182. (SCI一区TOP, IF:5.116)
[11] F.Li, E.B. Shangguan*, J. Li, L.J. Li, J. Yang, Z.R. Chang, Q.M. Li, X.Z. Yuan, H.J. Wang. Influence of annealing temperature on the structure and electrochemical performance of the Fe3O4 anode material for alkaline secondary batteries. ElectrochimicaActa, 178( 2015)34–44.(SCI一区TOP, IF:5.116)
[10] J. Li, E.B. Shangguan*, M.Z. Nie, Q.X.Jin, K. Zhao, Z.R. Chang, X.Z. Yuan, H.J. Wang. Enhanced electrochemical performance of high-density Al-substituted a-nickel hydroxide by a novel anion exchange method using NaCl solution. Int J Hydrogen Energy. 40 (2015) 1852-1858. (SCI二区TOP, IF:4.229)
[9] Y.X. Li, Jing Li,E.B. Shangguan, Q.M. Li, The effect of acidity, hydrogen bond catalysis and auxiliary electrode reaction on the oxidation peak current for dopamine, uric acid and tryptophan. Analytical Methods. 7(6)( 2015) 2636-2644.(IF:1.821)
[8] J. Li, E.B. Shangguan*, D. Guo, M. Tian , Y.B. Wang, Q.M. Li, Z.R. Chang*, X.Z. Yuan, H.J. Wang.Synthesis, characterization and electrochemical performance of high-density aluminum substituted α-nickel hydroxide cathode material for nickel-based rechargeable batteries. J. Power Sources. 270 (2014) 121–130. (SCI一区TOP, IF:6.945)
[7] J. Li, E.B. Shangguan*, D. Guo, Q.M. Li, Z.R. Chang﹡, X.Z. Yuan, H.J. Wang. Calcium metaborate as a cathode additive to improve the high-temperature properties of nickel hydroxide electrodes for nickel-metal hydride batteries. J. Power Sources. 263 (2014) 110–117. (SCI一区TOP, IF:6.945)
[6] D.Guo, E.B. Shangguan*, J. Li, T.H. Zhao, Z.R. Chang, Q.M. Li﹡, X.Z. Yuan, H.J. Wang. Effects of γ-CoOOH coating on the high-temperature and high-rate performances of spherical nickel hydroxide electrodes. Int J Hydrogen Energy,39 (2014) 3895-3903. (SCI二区TOP, IF:4.229)
[5] J. Li, F.L. Gao, E.B.Shangguan*, Q.M. Li﹡, The influencing mechanism of acidity on the oxidation peak currents of guanine and uric acid: hydrogen bond catalysis and degree of auxiliary electrode reduction reaction. Electrochimica Acta,136 (2014) 377-384. (SCI一区TOP, IF:5.116)
[4] E.B. Shangguan*, J. Li, D. Guo, Z.R. Chang﹡, X.Z. Yuan, H.J. Wang. Effects of different electrolytes containing Na2WO4 on the electrochemical performance of nickel hydroxide electrodes for nickel-metal hydride batteries. IntJ Hydrogen Energy, 39 (2014) 3412-3422. (SCI二区TOP, IF:4.229)
[3]E.B.Shangguan*, J.L.Wang, J. Li, D. Guo, Z.R. Chang﹡, X.Z. Yuan, H.J. Wang.. Enhancement of the high-temperature performance of advanced nickel-metal hydride batteries with NaOH electrolyte containing NaBO2. Int J Hydrogen Energy, 38 (2013)10616-10624. (SCI二区TOP, IF:4.229)
[2] E.B. Shangguan*, J. Li, Z.R. Chang﹡, H.W. Tang, B. Li, X.Z. Yuan,H.J. Wang. Sodium tungstate as electrolyte additive to improve high-temperature performance of Nickel-metal hydride batteries. Int J Hydrogen Energy.38 ( 2013)5133-5138. (SCI二区TOP, IF:4.229)
[1] Z.H. Wang , Jing Li, X.Y. Dong, D. Wang, T.W. Chen, H.Y. Qiao, A.P. Huang. Ethanol oxidation on a nichrome-supported spherical platinum microparticle electrocatalyst prepared by electrode position. Int J Hydrogen Energy, 33 (2008) 6143–6149. (SCI二区TOP, IF:4.229)